Simultaneous Sulfamethazine and Cr(Vi) Removal in Lab-Scale Microbial Fuel Cell-Constructed Wetland

17 Pages Posted: 9 Apr 2024

See all articles by Xu Chen

Xu Chen

Xinjiang Normal University

Yun Wang

Xinjiang Normal University

Nurmangul Mamathaxim

Xinjiang Normal University

Nuzahat Habibul

Xinjiang Normal University

Abstract

Microbial fuel cell (MFC) coupled constructed wetland (CW) is regarded as a promising green technology due to its simultaneous removal performance for the co-occurrence of various contaminants in wastewater. In this study, the simultaneous removal performance of sulfamethazine (SMZ) and hexavalent chromium Cr(VI) in the CW and MFC-CW systems was investigated. The removal efficiencies of total nitrogen (N), total phosphorus (P), and chemical oxygen demand (COD) were also examined. The results demonstrated that Cr(VI) was effectively eliminated with an excellent removal efficiency of >98.0%, followed by SMZ with a removal efficiency of 70.3%-85.6%. Additionally, during the long-term operation period, the average removal efficiency for N, P, and COD ranged from 74.0% to 96.1%, 83.6% to 94.1%, and 91.1% to 95.3%, respectively. The microbial community and antibiotic resistance genes (ARGs) in the anode and cathode were also analyzed separately to evaluate the SMZ and Cr(VI) removal performance of MFC-CW. The abundance of corresponding ARGs was slightly different in the anode and cathode regions. The average abundance of sul4 in the SMZ+Cr(VI) treatment MFC-CW was significantly higher than that of other sul1-3. This study offers valuable insights for the simultaneous removal of SMZ and Cr(VI) from wastewater by MFC-CW.

Keywords: Microbial fuel cell (MFC), Constructed wetland (CW), Sulfamethazine, Cr(VI)

Suggested Citation

Chen, Xu and Wang, Yun and Mamathaxim, Nurmangul and Habibul, Nuzahat, Simultaneous Sulfamethazine and Cr(Vi) Removal in Lab-Scale Microbial Fuel Cell-Constructed Wetland. Available at SSRN: https://ssrn.com/abstract=4788438 or http://dx.doi.org/10.2139/ssrn.4788438

Xu Chen

Xinjiang Normal University ( email )

Urumqi
China

Yun Wang

Xinjiang Normal University ( email )

Urumqi
China

Nurmangul Mamathaxim

Xinjiang Normal University ( email )

Urumqi
China

Nuzahat Habibul (Contact Author)

Xinjiang Normal University ( email )

Urumqi
China

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